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利用多功能生物材料核黄素及其衍生物黄素单核苷酸研究纤维素织物的光致发光性能。

Study of photoluminescence property on cellulosic fabric using multifunctional biomaterials riboflavin and its derivative Flavin mononucleotide.

机构信息

ENSAIT-GEMTEX, F-59100, Roubaix, France.

Université Lille Nord de France, F-59000, Lille, France.

出版信息

Sci Rep. 2019 Jun 18;9(1):8696. doi: 10.1038/s41598-019-45021-5.

Abstract

Flavins are ubiquitous in nature and participate in various biochemical reactions mainly in the form of coenzyme Flavin mononucleotide (FMN) or as precursor such as Riboflavin (RF). Both flavins, RF and FMN are multifunctional bio-based molecules yielding yellow coloration and exhibit photoluminescence, UV protection, and redox properties. The aim of the present research study was to investigate the diffusion method as a technique to obtain photoluminescent cellulosic fabric using multifunctional RF and FMN. The photoluminescent moiety RF and FMN exhibited three maximum absorbance peaks at about 270 nm, 370 nm and 446 nm in aqueous solution at pH 7. The solutions of RF and FMN with concentration 4% and 20% (owf) at pH 7 were prepared and used in diffusion method for cellulosic fabric dyeing. The study involved the determination of color performance and evaluation of luminescence property of the dyed fabric using UV-visible spectrophotometer and photoluminescence spectroscopy, respectively. Under monochromatic UV lamp exposure emitting at 370 nm, the dyed fabric showed an intense emission of greenish yellow color, which was later confirmed by the intense photoluminescence observed at a wavelength of about 570 nm. The study demonstrates the theoretical evaluation of quantum efficiency (φ) obtaining maximum φ value of 0.28. Higher color strength value and improved wash fastness were obtained by treatment with different biobased mordants such as tannic acid and citric acid as well as calcium chloride for both RF and FMN. Additionally, ultraviolet (UV) protection ability for both RF and FMN dyed fabric were determined and showed UPF factor of 50+ and 35 respectively. The work allowed us to explore the photoluminescence property of riboflavin and Flavin mononucleotide for its application in the field of textiles as a new scope of producing photoluminescent textile along with multifunctional properties such as coloration and UV protection.

摘要

黄素在自然界中普遍存在,主要以黄素单核苷酸(FMN)辅酶或核黄素(RF)前体的形式参与各种生化反应。黄素、RF 和 FMN 都是多功能生物基分子,呈现黄色并具有磷光、紫外线保护和氧化还原性质。本研究旨在探讨扩散法作为一种使用多功能 RF 和 FMN 获得磷光纤维素织物的技术。在 pH7 的水溶液中,RF 和 FMN 的磷光部分在 270nm、370nm 和 446nm 处显示出三个最大吸收峰。在 pH7 下,制备了浓度为 4%和 20%(owf)的 RF 和 FMN 溶液,并用于纤维素织物的扩散法染色。使用紫外-可见分光光度计和磷光光谱仪分别测定染色织物的颜色性能和发光性能。在单色 UV 灯照射下,发射波长为 370nm 时,染色织物发出强烈的绿黄色发射,后来在约 570nm 处观察到强烈的磷光,证实了这一点。该研究通过使用单宁酸和柠檬酸以及氯化钙等不同生物基媒染剂对 RF 和 FMN 进行处理,获得了更高的色强度值和改善的耐洗牢度,从而对量子效率(φ)进行了理论评估,获得了最大φ值为 0.28。此外,还测定了 RF 和 FMN 染色织物的紫外线(UV)防护能力,其 UPF 因子分别为 50+和 35。这项工作使我们能够探索核黄素和黄素单核苷酸的磷光性质,将其应用于纺织品领域,作为生产磷光纺织品的新领域,同时具有着色和紫外线保护等多种功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe6e/6581962/b9ee40718b5c/41598_2019_45021_Fig1_HTML.jpg

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